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Clinical application of multi-material artifact reduction (MMAR) technique in Revolution CT to reduce metallic dental artifacts

机译:多材料伪影减少(MMAR)技术在革命中的临床应用减少金属牙科术

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Background This study aimed to explore the performance of Revolution CT virtual monoenergetic images (VMI) combined with the multi-material artifact reduction (MMAR) technique in reducing metal artifacts in oral and maxillofacial imaging. Results There were significant differences in image quality scores between VMI + MMAR images and VMI+MARS (multiple artifact reduction system) images at each monochromatic energy level ( p = 0.000). Compared with the MARS technology, the MMAR technology further reduced metal artifacts and improved the image quality. At VMI _(90 keV) and VMI _(110 keV), the SD, CNR, and AI in the Revolution CT group were significantly lower than in the Discovery CT, but no significant differences in these parameters were found between two groups at VMI _(50 keV), VMI _(70 keV), and VMI _(130 keV) ( p & 0.05). The attenuation was comparable between two groups at any energy level ( p & 0.05). Conclusions Compared with the MARS reconstruction technique of Discovery CT, the MMAR technique of Revolution CT is better to reduce the artifacts of dental implants in oral and maxillofacial imaging, which improves the image quality and the diagnostic value of surrounding soft tissues.
机译:背景技术本研究旨在探讨革命CT虚拟单元图像(VMI)的性能与减少口腔和颌面成像中的金属伪影中的多材料伪影减少(MMAR)技术。结果每个单色能级(P = 0.000)的VMI + MMAR图像和VMI + MARS(多伪像减少系统)图像之间的图像质量分数存在显着差异(P = 0.000)。与火星技术相比,MMAR技术进一步减少了金属伪影,提高了图像质量。在VMI _(90keV)和VMI _(110keV)中,旋转CT组中的SD,CNR和AI显着低于发现CT,但在VMI的两组之间没有发现这些参数的显着差异_(50 kev),VMI _(70keV)和VMI _(130 keV)(P> 0.05)。衰减在任何能量水平的两组之间相当(P> 0.05)。结论与发现CT的火星重建技术相比,革命中的MMAR技术更好地减少口腔和颌面成像中牙科植入物的伪影,这提高了围绕软组织的图像质量和诊断价值。

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